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Updated: Oct 23, 2025

Development of a Human Preclinical Model of Osteoclastogenesis from Peripheral Blood Monocytes Co-cultured with Breast Cancer Cell Lines
Published on: September 13, 2017
Fam20C Regulates Bone Resorption and Breast Cancer Bone Metastasis through Osteopontin and BMP4
Hao Zuo1, Dengbao Yang1, Yihong Wan2
1Department of Pharmacology, The University of Texas Southwestern Medical Center, Dallas, Texas.
Abstract:
Fam20C is a kinase that generates the majority of secreted phosphoproteins and regulates biomineralization. However, its potential roles in bone resorption and breast cancer bone metastasis are unknown. Here we show that Fam20C in the myeloid lineage suppresses osteoclastogenesis and bone resorption, during which, osteopontin (OPN) is the most abundant phosphoprotein secreted in a Fam20C-dependent manner. OPN phosphorylation by Fam20C decreased OPN secretion, and OPN neutralization reduced Fam20C deficiency-induced osteoclast differentiation and bone metastasis. In contrast, Fam20C in breast cancer cells promoted bone metastasis by facilitating the phosphorylation and secretion of BMP4, which in turn enhanced osteoclastogenesis. Mutation of the BMP4 phosphorylation site elevated BMP4 lysosomal degradation and reduced BMP4 secretion. In breast cancer cells, BMP4 depletion or treatment with a BMP4 signaling inhibitor diminished osteoclast differentiation and bone metastasis and abolished Fam20C-mediated regulation of these processes. Collectively, this study discovers distinct roles for Fam20C in myeloid cells and breast cancer cells and highlights OPN and BMP4 as potential therapeutic targets for breast cancer bone metastasis. SIGNIFICANCE: Osteoclastogenesis and bone metastasis are suppressed by myeloid-derived Fam20C, but enhanced by breast cancer-associated Fam20C, uncovering novel Fam20C functions and new therapeutic strategies via targeting Fam20C substrates OPN and BMP4.
Insights
Fam20C kinase in myeloid cells suppresses bone breakdown, while in breast cancer cells, it promotes bone metastasis by affecting osteopontin and BMP4. Targeting these factors offers new therapeutic strategies.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Fam20C kinase is crucial for secreted phosphoprotein production and biomineralization.
- The roles of Fam20C in bone resorption and breast cancer bone metastasis remain largely unexplored.
Purpose of the Study:
- To investigate the distinct functions of Fam20C in myeloid cells versus breast cancer cells concerning bone metastasis.
- To identify Fam20C substrates involved in regulating osteoclastogenesis and bone metastasis.
Main Methods:
- Utilized genetic manipulation (Fam20C deficiency, BMP4 depletion) and pharmacological inhibition in cellular and animal models.
- Analyzed protein phosphorylation, secretion, degradation, and cellular differentiation pathways.
- Assessed bone resorption and breast cancer bone metastasis in vivo.
Main Results:
- Fam20C in myeloid cells suppresses osteoclastogenesis and bone resorption, with osteopontin (OPN) as a key substrate.
- Fam20C in breast cancer cells promotes bone metastasis by enhancing BMP4 phosphorylation and secretion, which stimulates osteoclastogenesis.
- Targeting OPN or BMP4 signaling significantly reduced Fam20C-mediated effects on osteoclast differentiation and bone metastasis.
Conclusions:
- Fam20C exhibits opposing roles in myeloid and breast cancer cells regarding bone metastasis.
- Fam20C substrates OPN and BMP4 are critical mediators of these distinct functions.
- OPN and BMP4 represent promising therapeutic targets for mitigating breast cancer bone metastasis.
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